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Experimental Investigation of Post-fire Mechanical Properties of Cold-formed Steels

机译:冷弯型钢射击后力学性能的实验研究

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摘要

Cold-formed steel members are widely used in residential, industrial and commercial buildings as primary load-bearing elements. During fire events, they will be exposed to elevated temperatures. If the general appearance of the structure is satisfactory after a fire event then the question that has to be answered is how the load bearing capacity of cold-formed steel members in these buildings has been affected. Hence after such fire events there is a need to evaluate the residual strength of these members. However, the post-fire behaviour of cold-formed steel members has not been investigated in the past. This means conservative decisions are likely to be made in relation to fire exposed cold-formed steel buildings. Therefore an experimental study was undertaken to investigate the post-fire mechanical properties of cold-formed steels. Tensile coupons taken from cold-formed steel sheets of three different steel grades and thicknesses were exposed to different elevated temperatures up to 800 oC, and were then allowed to cool down to ambient temperature before they were tested to failure. Tensile coupon tests were conducted to obtain their post-fire stress-strain curves and associated mechanical properties (yield stress, Young's modulus, ultimate strength and ductility). It was found that the post-fire mechanical properties of cold-formed steels are reduced below the original ambient temperature mechanical properties if they had been exposed to temperatures exceeding 300 oC. Hence a new set of equations is proposed to predict the post-fire mechanical properties of cold-formed steels. Such post-fire mechanical property assessments allow structural and fire engineers to make an accurate prediction of the safety of fire exposed cold-formed steel buildings. This paper presents the details of this experimental study and the results of post-fire mechanical properties of cold-formed steels. It also includes the results of a post-fire evaluation of cold-formed steel walls.
机译:冷弯型钢构件作为主要的承重构件广泛用于住宅,工业和商业建筑。在发生火灾时,它们将暴露在高温下。如果火灾后结构的总体外观令人满意,那么必须回答的问题是这些建筑物中冷弯型钢构件的承载能力如何受到影响。因此,在发生此类火灾后,需要评估这些构件的残余强度。但是,过去没有研究冷弯型钢构件的后燃行为。这意味着可能对着火的冷弯型钢结构做出保守的决定。因此,进行了一项实验研究以研究冷弯型钢的烧后力学性能。从三种不同钢种和厚度的冷弯钢板中取出的拉伸试样暴露在最高800 oC的不同高温下,然后冷却至环境温度,然后进行测试以进行破坏。进行了拉伸试样试验,以获得它们的射击后应力-应变曲线和相关的机械性能(屈服应力,杨氏模量,极限强度和延展性)。已经发现,如果冷弯型钢暴露于超过300 oC的温度下,其后燃烧后的机械性能会降低到低于原始环境温度的机械性能。因此,提出了一组新的方程式来预测冷弯型钢的射击后力学性能。这种火灾后的机械性能评估使结构工程师和消防工程师能够准确预测着火的冷弯型钢建筑的安全性。本文介绍了该实验研究的详细信息以及冷弯型钢的射击后力学性能的结果。它还包括对冷弯型钢壁进行火灾后评估的结果。

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